IP Library Granted Patent US 10,670,556
Granted Patent B2
US 10,670,556 · App. 15/311,331 · Granted Jun 2, 2020

Electrochemical gas sensor biasing module

Inventor: Nicholas Anthony DeBlasio (Monroe, NC)
Assignee: Teledyne Detcon, Inc.
G01N27/416G01N27/404G01N33/007G01N33/0073
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Quick Facts
Patent No.
US 10,670,556
App. No.
15/311,331
Granted
Jun 2, 2020
Kind
B2
Abstract

An electrochemical gas sensor biasing module may include a main housing, a battery that is contained in and/or extending from the main housing, and a sensor connector extending from a portion of the main housing. The sensor connector is configured to removably connect to an electrochemical gas sensor so that energy from the battery is delivered to the electrochemical gas sensor in order to maintain the electrochemical gas sensor in a biased state.

Claims (34)

1. An electrochemical gas sensor biasing module that is configured to be removably connected to an electrochemical gas sensor, the electrochemical gas sensor biasing module comprising:

a main housing having a first portion and a second portion;

a battery at least partially within the first portion of the main housing, the battery being configured to deliver a biasing power to the electrochemical gas sensor and to maintain the electrochemical gas sensor in a biased state when the electrochemical gas sensor biasing module is removably connected to the electrochemical gas sensor and the electrochemical gas sensor is unattached from a gas detector head; and

a sensor connector at least partially within the second portion of the main housing.

2. The electrochemical gas sensor biasing module of claim 1 , wherein the main housing includes an internal chamber, the electrochemical gas sensor further comprising an intrinsic safety line within the internal chamber of the main housing, the intrinsic safety line being in communication with the battery and being configured to limit an amount of power delivered from the battery.

3. The electrochemical gas sensor biasing module of claim 2 , wherein the intrinsic safety line includes a resistor and a fuse.

4. The electrochemical gas sensor biasing module of claim 1 , further comprising a low dropout regulator in communication with the battery and the sensor connector.

5. The electrochemical gas sensor biasing module of claim 4 , wherein the low dropout regulator is configured to output a constant voltage to the electrochemical gas sensor when the electrochemical gas sensor biasing module is connected to the electrochemical gas sensor.

6. The electrochemical gas sensor biasing module of claim 1 , further comprising a switch in communication with the battery, the switch being configured to selectively transition the electrochemical gas sensor biasing module between an activated state and a deactivated state.

7. The electrochemical gas sensor biasing module of claim 6 , wherein the battery is configured to supply power to the sensor connector when the electrochemical gas sensor biasing module is in the activated state.

8. The electrochemical gas sensor biasing module of claim 1 , further comprising a first printed circuit board and a second printed circuit board, the battery being coupled to the first printed circuit board and the sensor connector being coupled to the second printed circuit board.

9. The electrochemical gas sensor biasing module of claim 8 , wherein at least a portion of the battery extends from the first portion of the main housing.

10. The electrochemical gas sensor biasing module of claim 1 , wherein at least a portion of the sensor connector extends from the second portion of the main housing.

11. An electrochemical gas sensor biasing module, the electrochemical gas sensor biasing module being configured to be removably connected to an electrochemical gas sensor, the electrochemical gas sensor biasing module comprising:

a main housing having a first end and a second end opposite the first end;

a battery at least partially within the main housing first end, the battery being configured to deliver a biasing power to the electrochemical gas sensor and to maintain the electrochemical gas sensor in a biased state when the electrochemical gas sensor biasing module is removably connected to the electrochemical gas sensor and the electrochemical gas sensor is unattached from a gas detector head; and

a sensor connector at least partially within the main housing second end.

12. The electrochemical gas sensor biasing module of claim 11 , further comprising an intrinsic safety circuit in communication with the battery, the intrinsic safety circuit being configured to limit an amount of power from the battery to the sensor connector.

13. The electrochemical gas sensor biasing module of claim 12 , wherein the intrinsic safety circuit includes a resistor and a fuse.

14. The electrochemical gas sensor biasing module of claim 11 , further comprising a first printed circuit board within the main housing first end and a second printed circuit board within the main housing second end, the battery being coupled to the first printed circuit board and the sensor connector being coupled to the second printed circuit board.

15. The electrochemical gas sensor biasing module of claim 11 , further comprising a low dropout regulator in communication with the battery and the sensor connector, the low dropout regulator being configured to output a constant voltage through the sensor connector to the electrochemical gas sensor.

16. The electrochemical gas sensor biasing module of claim 11 , further comprising a switch in communication with the battery, the switch being configured to selectively transition the electrochemical gas sensor biasing module between an activated state and an deactivated state, the battery being configured to deliver a biasing power to the electrochemical gas sensor when the electrochemical gas sensor biasing module is in the activated state and the electrochemical gas sensor biasing module is connected to the electrochemical gas sensor.

17. The electrochemical gas sensor biasing module of claim 11 , wherein the battery is configured to deliver the biasing power to the electrochemical gas sensor when the electrochemical gas sensor is disconnected from a gas detector head.

18. An electrochemical gas sensor biasing module, comprising:

a main housing having a first end and a second end opposite the first end;

a sensor connector coupled to the main housing first end, the sensor connector including a plurality of connecting pins;

a battery coupled to the main housing second end;

an intrinsic safety circuit within the main housing and in communication with the battery and the sensor connector, the intrinsic safety circuit including a resistor and a fuse;

a low dropout regulator in communication with the battery and the sensor connector, the low dropout regulator being configured to output a constant voltage from the battery to the sensor connector; and

an on/off switch in communication with the battery, the on/off switch being configured to selectively transition the electrochemical gas sensor biasing module between an activated state and an deactivated state, the battery being configured to supply power to the sensor connector when the electrochemical gas sensor biasing module is in the activated state and to maintain the electrochemical gas sensor in a biased state when the electrochemical gas sensor biasing module is removably connected to the electrochemical gas sensor and the electrochemical gas sensor is unattached from a gas detector head.

19. The electrochemical gas sensor biasing module of claim 18 , further comprising a first printed circuit board coupled to the main housing first end and a second printed circuit board coupled to the main housing second end.

20. The electrochemical gas sensor biasing module of claim 19 , wherein:

the sensor connector and the low dropout regulator are coupled to the first printed circuit board; and

the battery, the resistor, and the fuse are coupled to the second printed circuit board.

Assignments (4)
CHANGE OF NAME Recorded Nov 20, 2019
From: DETCON, INC.
To: TELEDYNE DETCON, INC.
Reel/Frame 051067/0035 →
CHANGE OF NAME Recorded Nov 13, 2019
From: DETCON, INC.
To: TELEDYNE DETCON, INC.
Reel/Frame 051004/0863 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2019
From: SCOTT TECHNOLOGIES, INC.
To: DETCON, INC.
Reel/Frame 049039/0934 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2017
From: DEBLASIO, NICHOLAS ANTHONY
To: SCOTT TECHNOLOGIES, INC.
Reel/Frame 040829/0092 →
Continuity (2)
Provisional Application 61994228 · May 16, 2014
Related Publication 20170074820A1 · Mar 16, 2017